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1.
<正>The catalytic activity of Fe/ZSM-5 for the selective reduction of NO to N_2 with methane in the presence of excess O_2 was studied.Fe/ZSM-5 catalysts with various Fe loadings were prepared by impregnation method.It is well known that methane is inactive when Fe/ZSM-5 as the catalyst for the selective catalytic reduction(SCR) of NO with methane.However,this paper shows that when the content of Fe was about 0.5%,Fe/ZSM-5 showed higher catalytic activity and selectivity of methane,and put forward measurable activation for CH_4 is an important factor for the reaction of removal of NOx with CH_4.  相似文献   

2.
低温等离子体协助B2O3/γ-Al2O3 选择催化还原NO(英文)   总被引:1,自引:0,他引:1  
研究了低温等离子体协助催化条件下甲烷选择性催化还原NO反应(SCR).反应气体经等离子体活化后,生成NO2,HCHO,CH3NO和CH3NO2等活性更高的中间产物.程序升温表面反应表明,这些中间产物可在等离子体后置催化装置上进一步反应,从而使NOx还原为N2.在考察的一系列催化剂(包括γ-Al2O3,Ag/γ-Al2O3,B2O3/γ-Al2O3,Ga2O3/γ-Al2O3,In2O3/γ-Al2O3等)中,B2O3/γ-Al2O3表现出最好的催化活性.当反应温度为300oC时,NOx转化率达到最高.与γ-Al2O3催化剂相比,在10wt%B2O3/γ-Al2O3催化剂上,300oC时,NOx转化为N2的转化率从33.4%提高至51.0%.催化剂的酸性对于经等离子体活化后的反应气体在催化剂上的SCR反应起到重要作用.同时,催化剂上吸附态NOx对于NOx的转化也起到一定作用.  相似文献   

3.
Ag-ZSM-5催化剂上CH4选择催化还原NOx的研究   总被引:3,自引:0,他引:3  
摘要研究Ag-ZSM-5催化剂上CH4选择性催化还原NOx的反应性能,采用TPD和TPSR技术研究NO和O2共吸附于Ag-ZSM-5催化剂表面形成的吸附物种及其和CH4之间的反应。结果表明,Ag-ZSM-5催化剂上CH4选择性还原NOx活性和选择性较高。NO和O2共吸附在Ag-ZSM-5催化剂上形成的NO3(s)吸附物种能被CH4还原生成N2.在NO3(s)和O2共存的体系中,CH4能优先并选择性还原NO3(s)生成N2.  相似文献   

4.
氧化条件下NOx催化的甲烷均相部分氧化   总被引:2,自引:0,他引:2  
阎震  寇元 《物理化学学报》2002,18(11):1048-1051
考察了没有固体催化剂时NOx对甲烷气相氧化的促进作用.实验结果表明,即使在强氧化条件下(O2/CH4=5),NOx对甲烷部分氧化制一氧化碳仍然有明显的催化活性.在CH4-O2体系中加入0.005%~0.2%的NO后,反应温度可降低200-300 ℃.在反应产物中还可观察到甲醛和乙烯,通过改变反应条件可以控制它们的相对浓度.  相似文献   

5.
用浸渍法制备了系列Ir催化剂, 研究了富氧条件下Ir催化NO的反应, 考察了催化剂的催化反应性能及负载量和载体对催化活性的影响. 结果表明, 在Ir催化剂上不仅发生了NO氧化反应, 同时也发生了NO还原反应; Ir催化剂对NO反应有催化作用, 催化活性随Ir负载量的增加而增强. 载体对催化剂活性有一定的影响, 负载量低于0.1%(w)时, 催化NO氧化的活性顺序为Ir/ZSM-5>Ir/γ-Al2O3>Ir/SiO2, 这主要受载体自身性质的影响; 负载量高于0.1%时, 催化NO氧化的活性顺序为Ir/ZSM-5>Ir/SiO2>Ir/γ的活性顺序为Ir/γ-Al2O3>Ir/SiO2>Ir/ZSM-5, 这主要由于载体吸附作用促进了NO2在Ir催化剂上吸附分解. 与Pt催化剂相比, Ir催化剂更有利于促进NO还原.  相似文献   

6.
The microcalorimetric technique is employed to study the interaction of NO and NO 2 with the In/HZSM 5 catalyst which has been reported to be active for the selective catalytic reduction (SCR) of NO by CH 4. The amounts of chemisorption and differential heat of NO 2 adsorption on In 2O 3, HZSM 5 and In/HZSM 5 are much larger than those of NO. Furthermore, NO 2 adsorption on In 2O 3 is irreversible. Associating with the results of in situ IR and TPD, and the NO x conversion in NO(NO 2)+CH 4 system over In/HZSM 5 and HZSM 5 catalysts, it is reasonable to propose that in the CH 4 SCR process NO 2 plays a key role, and NO 2 species chemisorbed on the HZSM 5 support can migrate to the In sites to react with CH 4.  相似文献   

7.
陈鹏  董帆  冉茂希  李佳芮 《催化学报》2018,39(4):619-629
许多研究表明, MnOx和g-C3N4均有催化氧化NO的活性, 并且探索了它们各自的转化机理. 然而, MnOx/g-C3N4复合材料的光热催化机理仍然是一个未解决的问题. 我们通过室温沉淀法直接合成不同摩尔比的MnOx/g-C3N4, 并发现其表现出良好的光热协同催化氧化NO的性能. MnOx/g-C3N4催化剂在g-C3N4表面含有不同价态的MnOx. 通过原位红外光谱在60 ℃下研究了紫外-可见光诱导的MnOx热催化NO的机理以及MnOx/g-C3N4光热协同催化NO的机理. 结果表明, 光照对MnOx热催化NO的过程几乎没有影响, 但对MnOx/g-C3N4光热协同催化NO产生积极作用并且形成重要的催化循环机制. 具体过程是光生电子(e-)转移到MnOx上参与光热协同的还原循环(Mn4+→Mn3+→Mn2+), 且低价Mn离子易给出电子(e-)与光生空穴(h+)相结合而诱导逆向的循环(Mn2+→Mn3+→Mn4+), 使活性氧空位再生. 通过MnOx(Mn4+/Mn3+/Mn2+)变价而产生的活性氧(O-)可将中间产物(NOH和N2O2-)氧化为终产物(NO2-和NO3-). 这将为开发更好的净化NOx的催化剂提供重要的指导意义. XRD表征结果表明, MnOx/g-C3N4复合催化剂的结晶度较低. TEM和XPS表征结果表明, g-C3N4表面含有多种低结晶度的MnOx, 主要含有MnO, MnO2和Mn2O3. 此外, 通过对比MnOx和1:5 MnOx/g-C3N4催化净化NO的XPS结果, 发现反应后的MnOx含有大量Mn-Nitrate且Mn3+和Mn4+大幅度减少; 同时, 反应前后1:5 MnOx/g-C3N4的Mn2+, Mn3+和Mn4+的含量变化微弱. BET-BJH测试结果显示, MnOx/g-C3N4复合催化剂的比表面积和孔容均高于纯g-C3N4. UV-Vis DRS测试结果显示, MnOx/g-C3N4复合催化剂显示了良好的可见光吸收能力. 紫外-可见光催化去除NO的测试结果表明, 1:5 MnOx/g-C3N4(44%)的光催化活性明显高于MnOx(28%)和g-C3N4(36%). ESR测试结果表明, 参与反应的主要活性物种为·O2-自由基. EPR测试结果表明, 1:5 MnOx/g-C3N4的氧空位明显多于MnOx, 丰富的活性氧空位更有利于电子的迁移且促进Mnn+(n = 2, 3和4)的变价而诱导O2分子形成活性氧(O-). 以上结果清晰地表明1:5 MnOx/g-C3N4表现出不同的理化特性.可见光催化氧化NO的原位红外光谱表明, 光照前后MnOx催化氧化NO的过程没有明显的变化, 表明其属于典型的热催化过程, 综合上述表征结果发现MnOx的氧缺陷是Mnn+(n = 3和4)变价的活性位点, 可诱导O2产生活性氧催化氧化NO为硝酸盐吸附在MnOx上; 光照前后1:5 MnOx/g-C3N4催化氧化NO的过程有明显不同, 光照前主要表现为g-C3N4表面MnOx的热催化过程, 而光照后1:5 MnOx/g-C3N4为光热协同催化NO的过程. 具体过程是g-C3N4的光生电子(e-)转移到MnOx上参与光热协同的还原循环(Mn4+→Mn3+→Mn2+), 且低价Mn离子易给出电子(e-)与光生空穴(h+)相结合而诱导逆向的循环(Mn2+→Mn3+→Mn4+)使活性氧空位再生. 通过MnOx(Mn4+/Mn3+/Mn2+)变价而产生的活性氧(O-)可将中间产物(NOH和N2O2-)氧化为终产物(NO2-和NO3-).  相似文献   

8.
采用聚合羟基复合阳离子合成交联蒙脱土Al-Ce-PILC, 并分别用NH4NO3和(NH4)2SO4处理后, 将其作为载体, 采用浸渍法制备了应用于C3H6选择性催化还原NO反应的铜基交联黏土催化剂Cu/Al-Ce-PILC. 用Py-IR, IR和DSC等表征技术研究了不同处理方式对Al-Ce-PILC的结构、 酸性和催化剂活性的影响. 结果表明, 未经处理的Al-Ce-PILC中同时存在L酸和B酸, 以L酸为主, Cu/Al-Ce-PILC上NO的最大转化率仅为18。5%; 用NH4NO3处理提高了L酸量, NO转化率降低; 而用(NH4)2SO4处理改变了Al-Ce-PILC的酸性结构, 增大了B酸量, 并形成了超强酸中心, 催化剂上NO转化率显著提高, 在350 ℃时达最大值50.2%. B酸对于Cu/Al-Ce-PILC上NO的还原是必要的, 它有利于C3H6吸附并适度氧化为活性中间物种, 其酸量和酸强度的增加是催化剂活性改善的主要原因.  相似文献   

9.
Monolithic catalysts of Pt/La-Al2O3 and Pt/Ce0.67Zr0.33O2 were prepared to investigate methane selective catalytic reduction (SCR) of NO.The results indicate that Pt/Ce0.67Zr0.33O2 shows high activity and both NO and CH4 can be converted completely at 450 ℃.Meanwhile,NO and CH4 can be converted completely when there exists excess oxygen.The Pt/Ce0.67Zr0.33O2 catalyst were further investigated by using methane as reducing agent to SCR NO in a novel equipment which combined the CH4 selective catalytic reduction of NO with methane combustion.The result shows that the catalyst is high active and the novel equipment is very effective.The conversion of NO is above 92% under the conditions used in this work.The prepared burner and catalysts have great potential for application.  相似文献   

10.
Interaction of a Co-BEA catalyst with individual components (NO, C(3)H(6), CO, O(2)) and mixtures simulating the real feed of the selective catalytic reduction (SCR) of nitric oxide in static and pulse experiments at variable temperatures was investigated by means of IR, EPR, and operando DRIFT spectroscopy coupled with QMS/GC analysis of the products. Speciation of cobalt active sites into Co(II), mono- and polynuclear oxo-cobalt species as well as CoO clusters was quantified by IR using CO and NO as probe molecules. The key intermediates, by-products, and final products of the SCR reaction were identified and their spectroscopic signatures ascertained. Based on the spectroscopic operando results, a concise mechanistic scheme of the selective catalytic reduction of nitric oxide by propene, triggered by a two-electron Co(II)/Co(0) redox couple, was developed. It consists of a complex network of the sequential/parallel selective reduction steps that are interlocked by the rival nonselective oxidation of the intermediates and their thermal decomposition. It has been shown that the SCR process is initiated by the chemoselective capture of NO from the reaction mixture by the cobalt active sites leading to the cobalt(II) dinitrosyls, which in the excess of oxygen are partially oxidized to surface nitrates and nitrites. N(2)O is produced by semi-decomposition of the dinitrosyl intermediates on the mononuclear centers, whereas NO(2)via NO oxidation on the polynuclear oxo-cobalt sites. Cyanide and isocyanate species, formed together with propene oxygenates in the course of the C=C bond scission, are the mechanistically pivotal reaction intermediates of C(3)H(6) interaction with the dinitrosyles and NO(3)(-)/NO(2)(-) surface species. Dinitrogen is produced by three main reaction routes involving oxidation of cyanides by NO/NO(2), reduction of dinitrosyls, nitrates, and nitrites by propene oxygenates (medium temperature range) or their reduction by carbon monoxide (high temperature range).  相似文献   

11.
CeO2/ACF的低温SCR烟气脱硝性能研究   总被引:17,自引:5,他引:12  
在氧存在下以NH3为还原剂的选择性催化还原烟气NOX技术(SCR)已经工程化。工业中常用的催化剂,主要是V2O5/TiO2或V2O5-WO3/TiO2,在300℃~400℃表现出高的NOX脱除率。为此,选择性催化还原法(SCR)装置须安装在空气预热器之前和省煤器之后,以利用过程的烟气温度。但这里存在的高浓度粉尘和SO2容易引起催化剂中毒和使用寿命减少,因此,研究开发低温运行(〈300℃)的SCR催化剂,使催化反应器能布置在除尘或/和脱硫之后,具有重要意义。同时烟道废气的温度会因生产装置负荷的变化而有较大的波动,这就要求催化剂具有较宽的高活性温度区间。  相似文献   

12.
甲烷选择催化还原NO研究进展   总被引:13,自引:0,他引:13  
 近十年来,甲烷选择催化还原NOx已引起各国环境研究工作者的关注.综述了近年来甲烷选择催化还原NOx方面的研究进展,着重分析了用于该反应的催化剂的研究状况,探讨了目前比较公认的甲烷选择催化还原NOx的反应机理(NO2机理),详细介绍了目前催化剂用于提高甲烷DeNOx反应活性的方法;并展望了甲烷选择催化还原NOx今后的研究方向.  相似文献   

13.
刘彤  于琴琴  王卉  蒋晓原  郑小明 《催化学报》2011,32(9):1502-1507
研究了在低温等离子体和催化剂共同作用下,CH4选择催化还原(SCR)NO的反应.在所考察的金属氧化物催化剂中,γ-Al2O3表现出最高的催化活性.当等离子体放电功率为4.5 W,反应温度为300℃时,NO转化率为56.5%;该条件下单纯等离子体反应和以γ-Al2O3为催化剂时NO转化率分别为28.9%和0,表明等离子体...  相似文献   

14.
考察了In/SO42-/TiO2(In/STi)催化剂上甲烷选择性催化还原(CH4-SCR)NOx的活性,分析了硫酸化对催化活性的促进作用.结果表明,硫酸化影响了In在催化剂表面的存在形态和CH4的活化产物,从而提高了催化剂活性.吡啶红外光谱分析表明,硫酸化后的STi载体可提供足够强度的B酸位,有利于活性中心InO+物种的形成.原位红外光谱分析表明,In/TiO2催化剂上CH4的活化产物为完全氧化的CO2和H2O,而硫酸化后的In/STi催化剂上CH4的活化产物为HCOO-,该物种被认为是CH4-SCR反应的重要中间体,它的生成为In/STi催化剂上CH4-SCR反应的速控步骤.  相似文献   

15.
将作为还原剂的尿素担载于沥青基球状活性炭(PSAC)上研究了NO2的低温选择性催化还原(SCR)反应。结果表明,PSAC上尿素担载量的提高可以增大NO2与尿素的反应几率;当尿素担载量由8%提高到30%时,SCR反应脱硝活性显著提高,脱硝时间相应延长。在30~90℃,升高反应温度会减小NO2在PSAC表面的吸附量,从而导致NOx的脱除量减小。增加反应气氛中NO2和O2的浓度均有利于脱硝活性的提高,但当O2进料浓度大于9%时,继续增加O2进料浓度对脱硝活性的改善作用变得微弱。降低空速有利于提高脱硝活性和延长脱硝时间。当反应温度为30℃、空速为2000h-1、NO2和O2的进料浓度分别为0.05%和21%时,尿素担载量为8%的PSAC可在49h内实现85%以上的NOx转化率。  相似文献   

16.
Temperature programmed desorption (TPD) and density functional theory (DFT) are used to investigate adsorption sites and reaction of coadsorbed NO and CO on planar Ir(210) and faceted Ir(210) with tailored sizes of three‐sided nanopyramids exposing (311), (31${\bar 1}$ ) and (110) faces. Both planar and faceted Ir(210) are highly active for reduction of NO by CO with high selectivity to N2, which is accompanied by simultaneous oxidation of CO. Evidence is found for structure sensitivity in adsorption sites and reaction of coadsorbed NO and CO on faceted Ir(210) versus planar Ir(210). Strong interaction between NO and CO at high NO exposure and one‐monolayer CO pre‐coverage results in “explosive” evolution of N2 and CO2 on planar Ir(210) and size effects in reduction of NO by CO on faceted Ir(210) for average facet size ranging from 5 to 14 nm without change in facet structure.  相似文献   

17.
分别采用浸渍法和机械混合法制备了Cr改性的In/WO3/zrO2(In/WZr)催化剂,考察了改性前后催化剂的CH4选择性催化还原NO的活性.结果表明,将Cr2O3与In/WZr机械混合可显著提高In/WZr催化剂活性,Cr的加入促进了气相中NO向NO2的转化.而浸渍法制备的Cr/InAVZr催化剂活性远低于改性前的In/WZr催化剂,这是由于在制备过程中部分Cr2O3转化为CrO3,使其氧化性大大提高,从而将CH4完全氧化为CO2和H2O,不利于将CH4活化为反应所需的中间活性物种.  相似文献   

18.
 采用预处理-瞬态反应产物分析方法定量研究了Co-ZSM-5催化剂上乙烯选择性催化还原氮氧化物反应过程中表面中间物种的组成. 催化剂在275 ℃经0.1%NO-0.05%C2H4-10%O2/Ar混合气处理后生成了表面中间物种NCaObHc, 该物种与NO/O2/Ar混合气反应比与单独的NO或O2反应生成更多的N2. 通过质谱、红外吸收四组分 (CO2, CO, CH4和N2O)分析仪及气相色谱-质谱联用等技术分析了表面中间物种与NO/O2/Ar混合气反应的产物,确定了表面中间物种中三种元素N, C和H的平均原子数之比为1.0∶1.8∶5.0 (氧物种由于实验原因很难确定).  相似文献   

19.
The catalytic activities of MnOx-WO3/TiO2 for selective catalytic reduction(SCR) of NO with NH3 were investigated in a wide range of temperature and reaction condition.It yielded a NOx conversion of 80.3%-99.6% and a N2 product selectivity of 100%-98.7% during 100 °C to 350 °C at gas hourly space velocity(GHSV)=18900 h-1.In the presence of 0.01% SO2 and 6% H2O at 120 °C,the NOx conversion can maintain 98.5%.At 300 °C and with 0.07% SO2 in reactant stream,the NOx conversion stabilized at 99% as high as the commercial V-W/TiO2 catalyst's level.The steady-state kinetics study shows that O2 played a promoting role.In the presence of less than 1.5% O2,NOx conversion can increase sharply with the increase of O2 concentration.The reaction order was zero with respect to NH3 and first with respect to NO with excess O2 and H2O.The kinetics active energy(Ea) of Mn-W/TiO2 was calculated to be 6.24 kJ/mol according to the kinetic experiment at various temperatures,much lower than those of other catalysts reported in the literature.Mn-W/TiO2 is an excellent catalyst for SCR of NO with NH3 by now.  相似文献   

20.
银在甲烷选择性催化还原NOx反应中不同催化行为的研究   总被引:3,自引:0,他引:3  
 采用XRD,TEM和UV-Vis方法研究了Ag-HZSM-5催化剂中活性组分银的价态和结构变化,并将这种变化与其在CH4选择性催化还原NOx反应中的活性和选择性相关联.结果表明,惰性气氛下高温处理使交换到分子筛阳离子位上的Ag+自还原为Ag0,并在热的作用下聚集成纳米尺度的银颗粒Agn.纳米银颗粒Agn的形成提高了银催化剂在CH4选择性催化还原NOx反应中的活性,但它的长大又促进了CH4和O2的直接燃烧,使CH4选择性催化还原NOx反应的选择性降低.氧气气氛下高温预处理抑制了银颗粒的长大,并且氧气的氧化作用使银颗粒带有一定电荷,形成小的荷电纳米银粒子Agy+x.荷电纳米银粒子的形成使催化剂的活性降低,但提高了CH4选择性催化还原NOx反应的选择性.  相似文献   

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